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L Daum

Publications and source records attributed to L Daum.

6 recordsLinked to original sources

Assessment of the safety and efficacy of the monoclonal anti-tumor necrosis factor antibody-fragment, MAK 195F, in patients with sepsis and septic shock: a multicenter, randomized, placebo-controlled, dose-ranging study.

OBJECTIVE: To investigate the safety, biological effects, and efficacy of the anti-tumor necrosis factor (TNF) antibody fragment, MAK 195F, in a phase II trial in patient with severe sepsis. DESIGN: Prospective, randomized, open label, placebo-controlled, dose-ranging, multicenter, multinational clinical trial. SETTING: Sixteen academic medical centers' intensive care units in six European countries. PATIENTS: One hundred twenty-two patients with severe sepsis or septic shock who received standard supportive care and antimicrobial therapy. INTERVENTIONS: Patients received one of three different doses of the anti-TNF antibody (0.1 mg/kg, 0.3 mg/kg, or 1.0 mg/kg) or placebo; the antibody or placebo was given in nine doses at 8-hr intervals over 3 days. MEASUREMENTS AND MAIN RESULTS: There were no significant differences in mortality rates among the groups receiving various doses of the anti-TNF antibody or placebo, but patients with baseline serum interleukin (IL)-6 concentrations of > 1000 pg/mL appeared to benefit from MAK 195F in a dose-dependent fashion. Increased circulating IL-6 concentrations, but not TNF concentrations, were found to be important prognostic indicators for mortality for the patients in the placebo and the two lower dosage groups but not in the high dosage group (1 mg/kg). IL-6 concentrations decreased during the first 24 hrs of treatment in all three anti-TNF groups but not in the placebo group. MAK 195F was well tolerated by all patients. Human antimurine antibodies developed in 40% of the patients receiving the antibody. CONCLUSIONS: There was no increase in survival from sepsis for the patients receiving anti-TNF treatment in the overall study population. Retrospective stratification of patients by IL-6 concentrations suggests beneficial effects of the drug for patients with baseline circulating IL-6 concentrations of > 1000 pg/mL. This hypothesis requires validation in a larger, blinded, prospective study.

Antibodies, Monoclonal↗

Low incidence of transplant-related complications in patients with chronic release of tumor necrosis factor-alpha before admission to bone marrow transplantation: a clinical correlate of cytokine desensitization?

To investigate the role of tumor necrosis factor-alpha (TNF-alpha) released by activated macrophages, sequential serum samples of 120 patients undergoing bone marrow transplantation (BMT) were analyzed by enzyme-linked immunosorbent assay. De novo increases in serum TNF-alpha levels were correlated with the development of acute endothelial complications as well as acute graft-versus-host disease. In addition, the analysis of time courses revealed a different capacity of TNF-alpha regulation at various phases of BMT. While patients with acute TNF-alpha release in the first 2 weeks of BMT had a significantly enhanced incidence of complications, a subgroup of 9 patients with chronic asymptomatic release of TNF-alpha before admission to BMT was observed. These patients were protected from complications in the course of the first 6 months of BMT. Our observations indicate the occurrence of desensitization for TNF-alpha, as it is also reported after repeated injections of TNF-alpha or endotoxin in experimental models.

Adolescent↗

Effects of recombinant human tumor necrosis factor on rodent gliomas and normal brain.

In a study examining the possible therapeutic effects of recombinant human tumor necrosis factor-alpha (rHuTNF-alpha) on malignant gliomas without expression of tumor necrosis factor (TNF)-receptors, RG-2 glioma cells were tested in vitro as well as in a rat experimental glioma model. A growth inhibition assay revealed no inhibiting effect in vitro up to a concentration of 20 micrograms/ml rHuTNF-alpha. Receptor-binding studies showed that RG-2 cells did not present specific receptors for rHuTNF-alpha. The pharmacokinetics of rHuTNF-alpha after intravenous injection were studied with respect to serum, tissue, and brain tumor concentrations and showed increased glioma concentrations of (mean +/- standard error of the mean) 0.47 +/- 0.18 ng TNF/mg brain compared to 0.15 +/- 0.05 ng TNF/mg brain in the normal contralateral hemisphere. No therapeutic effect on solid RG-2 gliomas could be observed after stereotactic injection of 7.3 micrograms rHuTNF/10 microliter buffer solution into the tumor in 10 animals. Immunohistochemical studies after stereotactic injection of rHuTNF-alpha showed total disappearance of the substance after 24 hours without internalization into tumor cells. Stereotactic injection of 7.3 micrograms rHuTNF 10 microliters into normal brain resulted in marked inflammatory response around the injection track, including microvascular thrombosis. These results demonstrate that rHuTNF has neither direct nor indirect cytotoxic activity on RG-2 glioma cells. Furthermore, before clinical use of rHuTNF-alpha in malignant gliomas, the authors suggest that receptor studies be done in each patient. In receptor-positive patients undergoing treatment with rHuTNF-alpha, precautions should be taken to prevent local encephalitic reactions.

Animals↗